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β4-半乳糖基转移酶 5 是乳糖鞘氨醇合酶,对于小鼠胚胎外发育至关重要。

Beta4-galactosyltransferase-5 is a lactosylceramide synthase essential for mouse extra-embryonic development.

机构信息

Division of Transgenic Animal Science, Advanced Science Research Center, Kanazawa University, Kanazawa, Japan.

出版信息

Glycobiology. 2010 Oct;20(10):1311-22. doi: 10.1093/glycob/cwq098. Epub 2010 Jun 23.

Abstract

Glycosphingolipids (GSLs) are important for various biological functions in the nervous system, the immune system, embryogenesis and in other tissues and processes. Lactosylceramide (LacCer), which is synthesized from glucosylceramide (GlcCer) by LacCer synthase, is a core structure of GSLs, including gangliosides. LacCer synthase was reported to be synthesized by the beta4-galactosyltransferase-6 (beta4GalT-6) gene in the rat brain. However, the existence of another LacCer synthase gene was shown in cultured cells lacking beta4GalT-6. Here, we report that LacCer synthase is mainly synthesized by the beta4GalT-5 gene during early mouse embryogenesis, and its disruption is embryonic lethal. beta4GalT-5-deficient embryos showed developmental retardation from E7.5 and died by E10.5 as reported previously. LacCer synthase activity was significantly reduced in beta4GalT-5-deficient embryos and extra-embryonic endoderm (XEN) cells derived from blastocysts, and it was recovered when beta4GalT-5 cDNA was introduced into beta4GalT-5-deficient XEN cells. The amounts of LacCer and GM3 ganglioside were drastically reduced, while GlcCer accumulated in the beta4GalT-5-deficient XEN cells. Hematoma and ectopically accumulated trophoblast giant cells were observed in the anti-mesometrial pole of the extra-embryonic tissues, although all three embryonic layers formed. beta4GalT-5-deficient embryos developed until E12.5 as chimeras with wild-type tetraploid cells, which formed the extra-embryonic membranes, indicating that extra-embryonic defects caused the early embryonic lethality. Our results suggest that beta4GalT-5 is essential for extra-embryonic development during early mouse embryogenesis.

摘要

糖鞘脂 (GSLs) 在神经系统、免疫系统、胚胎发生和其他组织及过程的各种生物学功能中都很重要。由乳糖基转移酶-6 (beta4GalT-6) 基因在大鼠脑中合成的乳糖基神经酰胺 (LacCer) 是 GSLs 的核心结构,包括神经节苷脂。然而,在缺乏 beta4GalT-6 的培养细胞中,发现了另一种 LacCer 合酶基因的存在。在这里,我们报告在早期小鼠胚胎发生过程中,LacCer 合酶主要由 beta4GalT-5 基因合成,其缺失是胚胎致死的。如前所述,beta4GalT-5 缺陷型胚胎从 E7.5 开始发育迟缓,并在 E10.5 死亡。beta4GalT-5 缺陷型胚胎和来自囊胚的外胚层内胚层 (XEN) 细胞中的 LacCer 合酶活性显著降低,当将 beta4GalT-5 cDNA 引入 beta4GalT-5 缺陷型 XEN 细胞时,其活性得到恢复。beta4GalT-5 缺陷型 XEN 细胞中的 LacCer 和 GM3 神经节苷脂含量明显减少,而 GlcCer 则积累。在胚胎外组织的反 mesometrial 极中观察到血肿和异位积累的滋养层巨细胞,尽管形成了所有三个胚胎层。beta4GalT-5 缺陷型胚胎与野生型四倍体细胞形成嵌合体,可发育至 E12.5,并形成胚胎外膜,表明胚胎外缺陷导致早期胚胎致死。我们的结果表明,beta4GalT-5 在早期小鼠胚胎发生期间对胚胎外发育是必需的。

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